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This form is used for recording and computing wind data for ballistic or electronic flight operations, including pressure, azimuth, elevation, and horizontal distance.
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How to fill out WIND COMPUTATION (ELECTRONIC OR VISUAL)

01
Gather all necessary weather data, including wind speed and direction.
02
Access the wind computation tool, either electronic or visual.
03
If using electronic, enter the gathered data into the designated fields.
04
For visual methods, plot the data on the appropriate charts or diagrams.
05
Follow the tool's guidelines to perform the necessary calculations.
06
Review the output for accuracy and make any adjustments as needed.
07
Save or document the results for future reference.

Who needs WIND COMPUTATION (ELECTRONIC OR VISUAL)?

01
Meteorologists and weather forecasters.
02
Aviation professionals for flight planning and safety.
03
Marine navigators and ship captains.
04
Construction companies for assessing wind load on structures.
05
Environmental agencies for studying wind patterns.
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Armed with pressure and drag data, you can find the wind load using the following formula: force = area x pressure x Cd. Using the example of a flat section of a structure, the area – or length x width – can be set to 1 square foot, resulting in a wind load of 1 x 25.6 x 2 = 51.2 psf for a 100-mph wind.
Assuming the wind load acts as a distributed load on the roof, we can calculate the internal forces within the portal frame. The total wind load on the roof can be calculated as follows: Total Wind Load = Wind Pressure x Roof Area. Total Wind Load = 20 psf x (30 ft x 15 ft) [assuming a triangular roof shape]
Steps in Wind Load Calculation ing to Eurocode Determine the Location: Determine the Wind Zone: Determine the Reference Wind Speed: Adjust for Site Conditions: Calculate Wind Pressure: Determine External and Internal Pressure Coefficients: Calculate Wind Loads: Consider Wind-Induced Vibrations:
Wind speed is measured with an anemometer, a device that gets its name from “anemos”, a Greek word that means the wind. The anemometer is a relatively old invention, dating back to the 15th century, and it has been perfected over time.
The units of measurement of wind used in the UK are km/h or m/s for its speed, and knots (1 knot = 1.852 km/h) which are mainly used by sailors and pilots.
What is the probability factor for ? The wind pressures are calculated relative to the average characteristic wind speed over 10 min with an annual probability of exceeding p = 0.02 (ie once every 50 years).
WIND LOAD CALCULATION AS PER EURO CODE Reference area and height: height above ground (Ze) Z= 16.0 m. Mean wind velocity: "Vm(Ze) "= "Cr(Ze) wind turbulence: Iv(Ze) =Kl/[C0(Ze) . Peak velocity pressure: ρ= 1.25 Kg/m³ Reynolds number: force coefficient: Total wind force: Effective wind pressure:

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WIND COMPUTATION (ELECTRONIC OR VISUAL) refers to the methods used to calculate wind-related metrics either through electronic means, such as software tools, or visual methods, like charts and diagrams, to analyze wind patterns and their potential impacts.
Individuals and organizations that are involved in projects or activities affected by wind conditions, such as construction, architecture, and environmental assessments, are typically required to file WIND COMPUTATION (ELECTRONIC OR VISUAL).
To fill out WIND COMPUTATION (ELECTRONIC OR VISUAL), one needs to gather relevant data about wind speed, direction, and other related variables, then input this data into the prescribed software or template, following the specific guidelines provided for accuracy and compliance.
The purpose of WIND COMPUTATION (ELECTRONIC OR VISUAL) is to accurately assess wind conditions to ensure safety, compliance with regulations, and informed decision-making in planning and development processes.
Information that must be reported includes wind speed, wind direction, frequency of occurrence, any relevant environmental factors, and specific details regarding the location and nature of the project for which the computation is being submitted.
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